1069.94 GBP
INTEL X 4214 2.2G 12C/24T 16.5M
Dell (5397184330081 / 338-BSDR) - Server/Workstation - Not available - Q2'19 - Hexa-channel - DDR4-SDRAM - Cascade Lake - Intel Xeon Silver - 64-bit - LGA 3647 - Processor - Launched - AVX-512 - ECC - Embedded options available
Stores where to buy this product
Intel Xeon Silver 4214 Processor
The Intel Xeon Silver 4214 is a high‑performance server and workstation processor engineered for demanding enterprise workloads. Built on Intel’s Cascade Lake architecture, it delivers robust compute power while maintaining energy efficiency.
Core Architecture & Performance
The processor features 12 physical cores and 24 threads, enabling simultaneous multithreading (SMT) for improved throughput on multi‑threaded applications. The base clock frequency is 2.2 GHz, with a maximum turbo boost of up to 3.2 GHz. This dynamic scaling allows the CPU to adapt to workload demands, providing extra performance when needed without compromising power consumption.
Cache & Memory Support
A generous 16.5 MB L3 cache reduces memory latency and enhances data locality for compute‑intensive tasks. The processor supports up to 1024 GB of DDR4‑2400 MHz memory across six channels, ensuring ample bandwidth for large datasets and virtualization environments.
PCI Express & I/O Capabilities
The Xeon 4214 offers a maximum of 48 PCI Express lanes, all operating at the PCIe 3.0 standard. This high lane count supports multiple GPUs, NVMe SSDs, and other expansion cards, making it ideal for data‑center servers that require extensive I/O throughput.
Advanced Features & Security
- Intel® Trusted Execution Technology (TXT) – Enhances platform integrity by ensuring the system boots in a known good state.
- Intel® Software Guard Extensions (SGX) and Intel® TSX‑NI – Provide secure enclaves for sensitive data processing.
- Execute Disable Bit (XD) – Protects against buffer overflow attacks by preventing execution of code in non‑executable memory regions.
- Enhanced Intel SpeedStep Technology – Dynamically adjusts processor voltage and frequency for power savings during low‑load periods.
- Intel® Volume Management Device (VMD) – Enables efficient management of multiple storage devices, improving I/O performance in server configurations.
Thermal Design & Power Efficiency
The processor’s thermal design power (TDP) is rated at 85 W, with a case temperature limit of 77 °C. This balance between performance and heat output allows deployment in dense rack environments without excessive cooling requirements.
Socket & Compatibility
The Xeon 4214 uses the LGA 3647 (Socket P), a widely adopted socket for Intel’s server processors. It is fully compatible with a broad range of Dell PowerEdge servers, including:
- PowerEdge C4140 & C6420
- PowerEdge FC640, M640, M640 VRTX, MX740C
- PowerEdge R440, R540, R640, R740, R740XD, R940
- PowerEdge T440 & T640
- PowerEdge XR2
These platforms provide the necessary power delivery, cooling infrastructure, and motherboard support to fully exploit the processor’s capabilities.
Instruction Set Support
The Xeon 4214 supports the full suite of Intel® AVX‑512 instructions, enabling accelerated vector operations for scientific computing, machine learning, and high‑performance analytics workloads. Combined with its 64‑bit architecture, it can handle large memory spaces and complex computational tasks.
Manufacturing Process & Reliability
Fabricated on a 14 nm lithography process, the processor benefits from improved transistor density and lower power leakage. It also incorporates built‑in data integrity checks, ensuring reliable operation in mission‑critical environments.
Ideal Use Cases
- Virtualization Platforms – The multi‑core, multi‑threaded design supports dense VM deployments with minimal performance degradation.
- High‑Performance Computing (HPC) – AVX‑512 acceleration and large memory bandwidth make it suitable for scientific simulations and data analysis.
- Enterprise Storage & Backup – PCIe lane capacity and VMD support enable high‑throughput storage arrays.
- Database Servers – The substantial cache and memory channels reduce query latency in relational and NoSQL databases.
Conclusion
The Intel Xeon Silver 4214 combines a powerful core count, extensive memory support, robust I/O capabilities, and advanced security features into a single processor. Its compatibility with a wide range of Dell PowerEdge servers and its efficient power profile make it an excellent choice for enterprises seeking reliable, high‑performance compute solutions.
| This product in Comparor | |
|---|---|
|
Category
This product is cataloged in our store in these categories
|
- Processors for computers |
|
International
Find this product in one of our international stores
|
|
| Colors
Predominant colors of the product |
|
| Tags | Intel Xeon Silver DELL Xeon |
| Identifiers | |
| Brand | ![]() Dell is a computer technology company that was founded by Michael Dell in 1984. The company is headquartered in Texas and is one of the largest technology companies in the world. Dell manufactures and sells personal computers, servers, data storage devices, network switches, software, and computer peripherals. |
| MPN | Dell 338-BSDR |
| ID | 17779815 |
| Dimensions / Weight | |
| Key Features | |
|
Component for Specifies the type of device or system that the product is intended to be used with, such as a PC, server, notebook, surveillance system, or other electronic equipment. The value represents a single category and can be used to filter or group products by their target platform.
|
Server/Workstation |
|
Discrete graphics adapter Indicates whether the product includes a dedicated graphics adapter (discrete GPU) separate from any integrated graphics. A value of "Yes" means a discrete GPU is present, while "No" indicates only integrated graphics are available.
|
No |
| Discrete graphics adapter model | Not available |
|
ECC Indicates whether the memory module or component supports Error‑Correcting Code (ECC) for detecting and correcting single-bit errors during operation. A value of "Yes" means ECC is enabled, allowing automatic correction of data corruption; a value of "No" indicates no ECC support.
|
Yes |
|
Embedded options available Indicates whether the product includes embedded options such as firmware features, hardware modules or configuration settings that are built into the device and available for use without external accessories.
|
Yes |
| Enhanced intel speedstep technology | Yes |
|
Execute disable bit Indicates whether the processor’s Execute Disable bit is enabled, allowing the CPU to prevent execution of code from memory regions marked as non-executable.
|
Yes |
|
Intel 64 Indicates whether the processor is compatible with the Intel® 64 architecture, enabling it to run operating systems and applications designed for x86‑64 processors.
|
Yes |
|
Intel trusted execution technology Indicates whether the product incorporates Intel’s Trusted Execution Technology, a security feature that creates isolated execution environments to protect sensitive code and data from tampering or unauthorized access.
|
Yes |
|
Intel TSX-NI Indicates the specific version of Intel Transactional Synchronization Extensions – No Interlock (TSX‑NI) supported by a processor, which determines its capability for efficient transaction processing and concurrency control.
|
Yes |
|
Intel Turbo Boost Max Technology 3.0 Indicates whether the processor supports Intel Turbo Boost Max Technology 3.0, a feature that dynamically selects the fastest cores for peak performance and improves efficiency during demanding workloads.
|
No |
|
Launch date The calendar date on which a product was first made available to the public or released for sale. It is expressed in the format YYYY-MM-DD and can be used to filter, sort, or display the launch timeline of the item.
|
Q2'19 |
|
Maximum internal memory supported by processor The largest amount of internal random‑access memory (RAM) that a processor can address and support, expressed as a data size such as megabytes or gigabytes. It indicates the upper limit of memory capacity for active processes and multitasking performance on devices using this CPU.
|
1024 GB |
|
Maximum number of PCI Express lanes The total count of PCI Express lanes available on a device or component, indicating the maximum number of high‑speed communication channels that can be used simultaneously for peripherals such as graphics cards, storage devices, and networking adapters.
|
48 |
|
Memory channels The configuration of memory channels supported by a device, indicating how many independent memory paths the system can use for data transfer (e.g., Dual‑channel, Quad‑channel). This attribute helps users understand the potential bandwidth and performance characteristics of the memory subsystem.
|
Hexa-channel |
|
Memory clock speeds supported by processor The set of operating frequencies that a processor can run at, expressed in hertz (Hz). Values are typically listed as individual frequencies or ranges separated by commas, indicating the base clock and any boost or turbo options available for the CPU.
|
2400 MHz |
|
Memory types supported by processor A list of the types of memory modules that a device can use, such as DDR4 SDRAM, LPDDR3, or other compatible standards. Each entry represents a distinct memory technology supported by the hardware.
|
DDR4-SDRAM |
|
On-board graphics adapter The model name or number of the integrated graphics adapter built into a device, such as a laptop, desktop, or motherboard. It identifies the specific GPU variant used for rendering and video processing, allowing users to compare visual performance and compatibility across products.
|
No |
|
PCI Express CEM Revision The PCI Express Common Extensible Module (CEM) revision indicates the version of the PCI Express specification supported by a device or component. It is expressed as a numeric value such as 2.0, 3.0, or 4.0 and determines compatibility with PCIe devices and the maximum achievable bandwidth.
|
3.0 |
|
Processor ARK ID The Processor ARK ID is a numeric identifier assigned by Intel to each processor model. It uniquely distinguishes one CPU from another and can be used to look up detailed specifications, compatibility information, or firmware updates for that specific chip.
|
193385 |
|
Processor boost frequency The maximum operating frequency that a processor can reach when its turbo or boost feature is active, expressed in hertz (Hz). This value indicates the peak performance capability of the CPU under load and helps users compare how fast a processor can run beyond its base clock speed.
|
3.2 GHz |
|
Processor cache The amount of internal memory reserved for a processor’s cache, expressed in units such as megabytes (MB) or gigabytes (GB). This value indicates how much data the CPU can store locally to accelerate access and improve performance.
|
16.5 MB |
| Processor codename | Cascade Lake |
|
Processor cores The total number of physical processing units in a single central processing unit (CPU). This value indicates how many independent tasks the CPU can handle simultaneously, influencing multitasking and parallel performance.
|
12 |
|
Processor family The processor family identifies the group or series of CPU models that share a common architecture, design, and performance characteristics. It helps users compare processors across brands and generations by indicating the underlying technology used in the chip.
|
Intel Xeon Silver |
|
Processor frequency The fundamental operating frequency of a processor, expressed in hertz (Hz). It indicates the speed at which the CPU runs under normal conditions and is typically reported in gigahertz (GHz) or megahertz (MHz). This value helps users compare performance potential across different models.
|
2.2 GHz |
|
Processor lithography The lithography process defines the minimum feature size that can be etched onto a semiconductor chip, expressed in nanometers (nm). It indicates the manufacturing technology generation and influences performance, power consumption, and integration density of the processor.
|
14 nm |
|
Processor model Identifies the exact model of the central processing unit used in a device, including brand and numeric designation such as "Intel Core i5-8250U" or "AMD Ryzen 7 3700X". This value allows users to distinguish between different processor families, generations, and performance levels.
|
4214 |
|
Processor operating modes The set of instruction set architectures or execution modes that a processor can operate in, such as 32‑bit or 64‑bit. This attribute indicates the architectural mode(s) supported by the CPU and helps users determine compatibility with software that requires a specific bitness.
|
64-bit |
|
Processor package size The overall dimensions of a processor’s physical package, expressed as length × width × height in millimetres or inches. It indicates the size that must fit within a motherboard socket or mounting area and helps users compare compatibility across different CPU models.
|
76.0 x 56.5 mm |
|
Processor socket The physical connector used by a processor to attach to a motherboard or other compatible platform. Common examples include LGA 1151, BGA 1440, Socket AM4, and LGA 1200. This attribute indicates the exact socket designation required for proper CPU installation and compatibility.
|
LGA 3647 |
|
Processor threads The number of independent execution units (threads) that a processor can handle simultaneously. This value indicates how many parallel tasks the CPU can process at once, which affects multitasking performance and workload distribution.
|
24 |
|
Product Type Indicates the general classification or type of an item, such as "laptop", "projector", "router" or "paint". It helps users quickly identify the nature of the product and compare similar items across categories.
|
Processor |
|
Scalability The maximum number of CPU sockets that a product can support. It indicates how many processor units can be installed simultaneously in the system, which affects overall processing capacity and scalability.
|
2S |
| Status | Launched |
|
Supported instruction sets A list of processor instruction set extensions that a CPU can execute, such as AVX, AVX2, SSE4.1, SSE4.2, and AVX‑512. Each value represents an individual extension or group of extensions supported by the hardware.
|
AVX-512 |
|
Tcase Valor que indica la temperatura a la cual el producto opera o se mantiene durante su uso normal. Se expresa en grados Celsius, Fahrenheit o Kelvin según el contexto del fabricante y permite comparar condiciones térmicas entre dispositivos similares.
|
77 °C |



